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A Raster Scanning Reflectance Imager for Non-Model Based Quantification of Tissue Scatter

机译:基于非模型的组织散射量化的光栅扫描反射率成像器

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It has been shown that locally resolved reflectance measurements can directly quantify scatter changes in tissues without the need for computationally expensive model-based reconstruction schemes. Imaging systems exploiting non-model based reconstruction schemes are faster compared to the conventional model based schemes and thus have the potential for imaging tissue pathologies in real-time. In this report, the scanning system is described in terms of the design, construction and testing for multi-wavelength reflectance imaging capable of measuring scatter changes with 100 micron resolution of tissue. Imaging fields of up to 256 by 256 pixels were used in this current system, with a design for a 100 micron spot to allow sampling of the local scatter values in this size of region. Tissue phantoms with varying scattering and absorption profiles within the region of interest were used to test the performance of this system. The results demonstrate the ability of the instrument to measure scatter changes independent of local absorber concentration. This new scanning system should allow visualization of tumor-associated scatter changes in situ, with full spectral resolution across the visible range.
机译:已经表明,本地解决的反射率测量可以直接量化组织中的散射变化,而无需计算昂贵的基于模型的重建方案。与传统的基于模型的方案相比,利用基于非模型的重建方案的成像系统更快,因此具有实时成像组织病理的可能性。在本报告中,根据能够测量100微米分辨率的组织的多波长反射率成像的设计,构造和测试来描述扫描系统。在该电流系统中使用高达256像素的成像字段,具有100微米点的设计,以允许在这种大小的区域中采样局部散射值。在感兴趣区域内具有不同散射和吸收曲线的组织幽灵用于测试该系统的性能。结果证明了仪器测量散射变化的能力,无论局部吸收浓度无关。这种新的扫描系统应允许以跨越可见范围的完全频谱分辨率可视化肿瘤相关散射变化。

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